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Professor Santamarina explores the scientific foundations of geomaterial behavior and subsurface processes using particle-level and pore-scale experiments, combined with numerical methods and high-resolution process monitoring systems. This conceptual and experimental framework is advancing the study of phenomena and the development of solutions in energy geotechnology with contributions to: resource recovery (petroleum, methane hydrates), energy geo-storage, efficiency and conservation, and energy waste (carbon geological storage, fly ash and nuclear waste).
Professor Santamarina explores the scientific foundations of geomaterial behavior and subsurface processes using particle-level and pore-scale experiments, combined with numerical methods and high-resolution process monitoring systems. This conceptual and experimental framework is advancing the study of phenomena and the development of solutions in energy geotechnology with contributions to: resource recovery (petroleum, methane hydrates), energy geo-storage, efficiency and conservation, and energy waste (carbon geological storage, fly ash and nuclear waste).
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crossref(2024)
POWDER TECHNOLOGY (2024): 119306
JOURNAL OF GEOTECHNICAL AND GEOENVIRONMENTAL ENGINEERINGno. 11 (2023)
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Scientific Reportsno. 1 (2023): 1-9
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GEOTECHNICAL TESTING JOURNALno. 5 (2023): 699-711
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Arabian Journal of Geosciencesno. 10 (2023): 1-21
ENERGY & FUELSno. 13 (2023): 9394-9401
JOURNAL OF GEOTECHNICAL AND GEOENVIRONMENTAL ENGINEERINGno. 6 (2023)
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Geoenergy Science and Engineering (2023): 212029
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